Search for light sterile neutrinos with the T2K far detector Super-Kamiokande at a baseline of 295km

Physical Review D American Physical Society 99:7 (2019) 071103

Authors:

K Abe, R Akutsu, A Ali, C Andreopoulos, L Anthony, M Antonova, S Aoki, A Ariga, Y Ashida, Y Awataguchi, Y Azuma, S Ban, M Barbi, GJ Barker, G Barr, C Barry, M Batkiewicz-Kwasniak, F Bench, V Berardi, S Berkman, RM Berner, L Berns, S Bhadra, S Bienstock, A Blondel, S Bolognesi, B Bourguille, SB Boyd, D Brailsford, A Bravar, C Bronner, MB Avanzini, J Calcutt, T Campbell, S Cao, SL Cartwright, A Cervera, A Chappell, C Checchia, D Cherdack, N Chikuma, G Christodoulou, J Coleman, G Collazuol, D Coplowe, A Cudd, A Dabrowska, G De Rosa, T Dealtry

Abstract:

We perform a search for light sterile neutrinos using the data from the T2K far detector at a baseline of 295 km, with an exposure of 14.7(7.6)×10^20 protons on target in neutrino (antineutrino) mode. A selection of neutral-current interaction samples is also used to enhance the sensitivity to sterile mixing. No evidence of sterile neutrino mixing in the 3+1 model was found from a simultaneous fit to the charged-current muon, electron and neutral-current neutrino samples. We set the most stringent limit on the sterile oscillation amplitude sin^2θ24 for the sterile neutrino mass splitting Δm^2v41<3×10^−3eV^2/c^4.

Fully differential vector-boson fusion Higgs pair production at next-to-next-to-leading order

Physical Review D American Physical Society 99:7 (2019) ARTN 074028

Authors:

Frederic Dreyer, A Karlberg

Abstract:

We calculate the fully differential next-to-next-to-leading order (NNLO) QCD corrections to vector-boson fusion (VBF) Higgs pair production. This calculation is achieved in the limit in which there is no colored cross-talk between the colliding protons, using the projection-to-Born method. We present differential cross sections of key observables, showing corrections of up to 3%–4% at this order after typical VBF cuts, with the total cross section receiving contributions of about 2%. In contrast to single Higgs VBF production, we find that the NNLO corrections are for the most part within the next-to-leading order scale uncertainty bands.

The complex life of hydrodynamic modes

(2019)

Authors:

Sašo Grozdanov, Pavel K Kovtun, Andrei O Starinets, Petar Tadić

The status of neutrino interaction theory and its impact on future neutrino oscillation experiments

Sissa Medialab Srl (2019) 033

Physics potential of the International Axion Observatory (IAXO)

(2019)

Authors:

E Armengaud, D Attie, S Basso, P Brun, N Bykovskiy, JM Carmona, JF Castel, S Cebrián, M Cicoli, M Civitani, C Cogollos, JP Conlon, D Costa, T Dafni, R Daido, AV Derbin, MA Descalle, K Desch, IS Dratchnev, B Döbrich, A Dudarev, E Ferrer-Ribas, I Fleck, J Galán, G Galanti, L Garrido, D Gascon, L Gastaldo, C Germani, G Ghisellini, M Giannotti, I Giomataris, S Gninenko, N Golubev, R Graciani, IG Irastorza, K Jakovcic, J Kaminski, M Krcmar, C Krieger, B Lakić, T Lasserre, P Laurent, O Limousin, A Lindner, I Lomskaya, B Lubsandorzhiev, G Luzón, MCD Marsh, C Mergalejo, F Mescia, M Meyer, J Miralda-Escudé, H Mirallas, VN Muratova, XF Navick, C Nones, A Notari, A Nozik, A Ortiz de Solórzano, V Pantuev, T Papaevangelou, G Pareschi, K Perez, E Picatoste, MJ Pivovaroff, J Redondo, A Ringwald, M Roncadelli, E Ruiz-Chóliz, J Ruz, K Saikawa, J Salvadó, MP Samperiz, T Schiffer, S Schmidt, U Schneekloth, M Schott, H Silva, G Tagliaferri, F Takahashi, F Tavecchio, H ten Kate, I Tkachev, S Troitsky, E Unzhakov, P Vedrine, JK Vogel, C Weinsheimer, A Weltman, W Yin